Extrapolation of trial results suggests that aspirin is useful in intermittent claudication.
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Publications and source records attributed to P Gresele.
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U73122 ((1-[6-(( 17beta-3-methoxyestra-1,3,5(10)-trien-17-yl)amino)exyl]-1H-p yrrole-2,5-dione)) is generally used as a selective inhibitor of phospholipase C (PLC) and the related rise in cytosolic Ca2+. Recently, by using hepatocytes, it was suggested that its action sites are different for PLC activation and increase in Ca2+ concentration. To verify whether U73122 has different sites for inhibiting PLC activation and calcium responses in human platelets, aggregation, Mn2+ influx, cytosolic Ca2+ increase and PLC activation were studied in response to thrombin and the synthetic agonist of the thromboxane receptor U46619 (9,11-dideoxy-9alpha,11alpha-methanoepoxyprostaglandin F2alpha). With both agonists, U73122 inhibited aggregation, Mn2+ influx and the enhancement of cytosolic calcium at concentrations of 2 microM or lower, while 10 microM was necessary to inhibit PLC activation. Our results suggested that U73122 is much more active in antagonizing Ca2+ channels, both the intracellular ones, which are activated by formation of inositol 1,4,5 P3 and those present on plasma membrane, than in reducing the activation of PLC.
The inhibition of cyclooxygenase does not fully account for the spectrum of activities of nonsteroidal antiinflammatory drugs. It is evident, indeed, that regulation of inflammatory cell function may contribute in explaining some of the effects of these drugs. Tissue recruitment of T cells plays a key role in the development of chronic inflammation. Therefore, the effects of salicylates on T-cell adhesion to and migration through endothelial cell monolayers on collagen were analyzed in an in vitro static system. Aspirin and sodium salicylate reduced the ability of unstimulated T cells to adhere to and transmigrate through cytokine-activated endothelium. Although salicylates did not modify the expression of integrins on T cells, they blunted the increased adherence induced by the anti-beta2 monoclonal antibody (MoAb) KIM127 and prevented the appearance of an activation-dependent epitope of the CD11/CD18 complex, recognized by the MoAb 24, induced by contact with endothelial cells. Salicylates also induced an increase of intracellular calcium ([Ca2+]i) and activation of protein kinase C (PKC) in T cells, but not cell proliferation and interleukin (IL)-2 synthesis. The reduction of T-cell adhesiveness appears to be dependent on the increase in[Ca2+]i levels, as it could be reversed by blocking Ca2+ influx, but not by inhibiting PKC. Moreover, ionomycin at concentrations giving an increase in [Ca2+]i similar to that triggered by aspirin, strictly reproduced the T-cell phenotypic and functional changes induced by salicylates. Aspirin reduced T-cell adhesion and migration also ex vivo after infusion to healthy volunteers. These data suggest that the antiinflammatory activity of salicylates may be due, at least in part, to an interference with the integrin-mediated binding of resting T lymphocytes to activated endothelium with consequent reduction of a specific T-cell recruitment into inflammatory sites.
Activated protein C (APC) is a potent physiologic anticoagulant with profibrinolytic properties, and has been shown to prevent thrombosis in different experimental models. We investigated the effect of human APC on thrombin-induced thromboembolism in mice, a model of acute intravascular fibrin deposition leading to death within minutes. APC given intravenously (i.v.) as a bolus 2 min before thrombin challenge (1,250 U/kg) reduced mortality in a dose-dependent manner despite the lack of thrombin inhibitor activity. Significant inhibition of thrombin-induced death was observed at the dose of 0.05 mg/kg, and maximal protection was obtained with 2 mg/kg (> 85% reduction in mortality rate). Histology of lung tissue revealed that APC treatment (2 mg/kg) reduced significantly vascular occlusion rate (from 89.2 to 46.6%, P < 0.01). The protective effect of APC was due to the inhibition of endogenous thrombin formation as indicated by the fact that (a) the injection of human thrombin caused a marked decrease in the coagulation factors of the intrinsic and common pathways (but not of Factor VII), suggesting the activation of blood clotting via the contact system; (b) APC pretreatment reduced markedly prothrombin consumption; (c) the lethal effect of thrombin was almost abolished when the animals were made deficient in vitamin K-dependent factors by warfarin treatment, and could be restored only by doubling the dose of thrombin, indicating that the generation of endogenous thrombin contributes significantly to death; and (d) APC failed to protect warfarin-treated animals, in which mortality is entirely due to injected thrombin, even after protein S supplementation. Other results suggest that APC protects from thrombin-induced thromboembolism by rendering the formed fibrin more susceptible to plasmin degradation rather than by reducing fibrin formation: in thrombin-treated mice, fibrinogen consumption was not inhibited by APC; and inhibition of endogenous fibrinolysis by epsilon-aminocaproic or tranexamic acid resulted in a significant reduction of the protective effect of APC. Since APC did not enhance plasma fibrinolytic activity, as assessed by the measurement of plasminogen activator (PA) or PA inhibitor (PAI) activities, PAI-1 antigen, or 125I-fibrin degrading activity, we speculate that the inhibition of additional (endogenous) thrombin formation by APC interrupts thrombin-dependent mechanisms that make fibrin clots more resistant to lysis, so that the intravascular deposited fibrin can be removed more rapidly by the endogenous fibrinolytic system.
Platelet activating factor (PAF), a powerful inflammatory phospholipid mediator, has been detected in normal human saliva and found to be increased in periodontitis. The cellular source of PAF in saliva is controversial although several data suggest an origin related to the presence of inflammatory cells. PAF levels in biological fluids are regulated by PAF-producing cells and by the PAF-degrading acetylhydrolase. Although in normal human saliva acetylhydrolase activity is very low, no information is available on the levels of this enzyme in inflammatory conditions of the mouth. The aim of our study was to assess the contribution of inflammatory cells to the levels of PAF in saliva in normal subjects and in patients with periodontitis. PAF was measured by radioimmunoassay (RIA) in mixed uncentrifuged saliva and in cell-free saliva from healthy subjects, before and after tooth brushing, and in patients with periodontitis. In healthy subjects PAF levels were significantly higher in whole saliva than in centifuged saliva (1.51 +/- 0.22 vs. 0.92 +/- 0.04 ng/ml, p < 0.0039). A significant increase in the amount of PAF was detected in whole saliva, but not in centifuged saliva, 2 h after tooth brushing. In patients with periodontitis PAF levels were not different from those of healthy individuals when using centrifuged saliva but were significantly higher when using whole, uncentrifuged saliva. Exogenous radiolabelled PAF was degraded much more rapidly by the saliva of periodontitis patients than by that of normal subjects. In conclusion, our study shows that inflammatory cells regulate the levels of PAF in saliva contributing to its production and degradation. The differential degradation of PAF in normal and inflammatory saliva highlights the absolute need of a series of methodological precautions when performing studies on salivary PAF.
BACKGROUND AND AIMS: A new amino acid derivative of 5-aminosalicylic acid, 5-ASA-glutamate, releases 5-aminosalicylic acid independently of the action of bacterial azoreductases or adapt intestinal pH. In this study, 5-ASA-glutamate was compared with sulphasalazine with respect to: 1) therapeutic action, 2) effects on the synthesis of eicosanoids, 3) regional release of 5-aminosalicylic acid in the intestine. METHODS: Colitis was induced in 29 rats by intracolonic administration of trinitrobenzensulfonic acid. Nine animals received an equal amount of saline. Three days after induction of colitis, animals were randomly assigned to equimolecular doses of 5-aminosalicylic acid as sulphasalazine (1040 mg/kg bw day) or 5-ASA-glutamate (850 mg/kg bw day) or arabic gum in water, given intragastrically. Arabic gum was also administered to animals that had received a saline enema (control group). The guts of 3 rats from the 5-ASA-glutamate group and 3 from the sulphasalazine group were used to assess regional release of 5-ASA, while in all the others, after 21 days of treatment, macroscopic and histologic lesions were assessed and eicosanoids and leukotriene determinations were performed. RESULTS: The 5-ASA-glutamate group had macroscopic (2.20 +/- 0.58) and histologic (2.80 +/- 1.24) significantly lower scores than the trinitrobenzensulfonic acid group (3.40 +/- 0.22 and 6.50 +/- 1.2 respectively). 5-ASA-glutamate group had reduced PGE2 (-31%) and TXB2 (-25%) more effectively than the sulphasalazine group. LTB4 release was not affected by 5-ASA-glutamate treatment, while sulphasalazine produced a non significant, but quite consistent, reduction in LTB4 release (-37%). The release of 5-ASA after sulphasalazine was higher in the small intestine, lower in the colon compared to that following 5-ASA-glutamate administration. CONCLUSIONS: 5ASA-glutamate was effective in reducing the macroscopic and histologic score in the trinitrobenzensulfonic acid induced colitis. It also had some effect in reducing eicosanoid synthesis and could be a promising drug for the treatment of inflammatory bowel disease.
BACKGROUND: Previous studies relating increased thromboxane (TX) biosynthesis to cardiovascular risk factors do not answer the question whether platelet activation is merely a consequence of more prevalent atherosclerotic lesions or reflects the influence of metabolic and hemodynamic disturbances on platelet biochemistry and function. METHODS AND RESULTS: We examined 64 patients with large-vessel peripheral arterial disease and 64 age- and sex-matched control subjects. TXA2 biosynthesis was investigated in relation to cardiovascular risk factors by repeated measurements of the urinary excretion of its major enzymatic metabolite, 11-dehydro-TXB2, by radioimmunoassay. Urinary 11-dehydro-TXB2 was significantly (P = .0001) higher in patients with peripheral arterial disease (57 +/- 26 ng/h) than in control subjects (26 +/- 7 ng/h). Seventy percent of patients had metabolite excretion > 2 SD above the normal mean. However, 11-dehydro-TXB2 excretion was enhanced only in association with cardiovascular risk factors. Multivariate analysis showed that diabetes, hypercholesterolemia, and hypertension were independently related to 11-dehydro-TXB2 excretion. During a median follow-up of 48 months, 8 patients experienced major vascular events. These patients had significantly (P = .001) higher 11-dehydro-TXB2 excretion at baseline than patients who remained event free. CONCLUSIONS: The occurrence of large-vessel peripheral arterial disease per se is not a trigger of platelet activation in vivo. Rather, the rate of TXA2 biosynthesis appears to reflect the influence of coexisting disorders such as diabetes mellitus, hypercholesterolemia, and hypertension on platelet biochemistry and function. Enhanced TXA2 biosynthesis may represent a common link between such diverse risk factors and the thrombotic complications of peripheral arterial disease.
Picotamide is a dual thromboxane (Tx) A2 receptor antagonist/Tx synthase inhibitor although some observations suggest an anti-vasoconstrictor effect independent of TxA2 inhibition/antagonism. The aim of our study was to assess whether picotamide antagonises vascular contractions induced by different vasoactive substances in vitro. Picotamide inhibited competitively the contraction of rabbit aortic rings induced by the TxA2 mimetic U46619 (pA2 = 3.59) but also the contractions induced by phenylephrine (pA2 = 3.93) and serotonin (5-HT) (pA2 = 5.81) although in a not competitive way. Picotamide did not inhibit potassium-induced contractions, thus excluding aspecific effects on vascular smooth muscle. Picotamide inhibited 5-HT-induced platelet aggregation in vitro with an IC50 (212 microM) similar to that found when other aggregating stimuli are used, but it did not affect shape change (IC50 > 1 mM) suggesting that the effects of picotamide can not be ascribed to 5-HT2-receptor antagonism; in the same experimental conditions neither a Tx-receptor antagonist (BM13.177) nor a dual Tx-receptor antagonist/synthase inhibitor (ridogrel) affected 5-HT-induced platelet responses. Our studies demonstrate that picotamide exerts antivasoconstrictor and platelet inhibitory effects unrelated to TxA2 antagonism. This activity may contribute to the anti-thrombotic/anti-ischaemic effects of the drug in vivo.
Peripheral vascular disease (PVD) is an indicator of diffuse atherosclerosis and is associated with a greatly increased incidence of coronary heart and cerebrovascular disease. Although several studies have assessed whether in vivo platelet activation takes place in patients with PVD, no data are available comparing different platelet function tests in this patient population. We have compared prospectively four tests for the measurement of in vivo platelet activation (plasma betaTG, plasma PF4, intraplatelet betaTG and urinary excretion of 11-dehydro-TXB2) and one in vitro platelet function test (ADP-induced platelet aggregation) in 63 well-characterized patients with intermittent claudication and in 18 age- and sex-matched healthy volunteers. No statistically significant difference was found between patients and controls for plasma betaTG (20.0 +/- 11.8 vs. 18.8 +/- 9.0 ng/ml, respectively), plasma PF4 (5.2 +/- 2.9 vs. 6.3 +/- 3.5 ng/ml), betaTG/PF4 ratio (4.0 +/- 2.9 vs. 3.6 +/- 1.8), intraplatelet betaTG (4503 +/- 1482 vs. 4059 +/- 1065 ng/ml), and threshold aggregatory concentration of ADP (1.7 +/- 0.72 vs. 1.45 +/- 0.56 microM). Urinary 11-dehydro-TXB2 was instead significantly higher in the PVD group (55.4 +/- 27.5 vs. 26.7 +/- 7.0 ng/h, p <0.001). Our study shows that urinary 11-dehydro-TXB2 is a more sensitive index of in vivo platelet activation than the measurement of either platelet specific proteins or of in vitro platelet aggregation in patients with PVD.
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Washed intact human platelets were prelabelled with [3H]arachidonic acid ([3H]AA) and stimulated with thrombin or with AlF4-, a known unspecific activator of G-proteins. Both stimuli induced the liberation of [3H]AA, the release of beta-thromboglobulin (beta-TG) and platelet aggregation. PMA did not induce liberation of [3H]AA although it induced beta-TG release and aggregation; preincubation with PMA did not modify significantly the amounts of [3H]AA and beta-TG released by thrombin or AlF4-. Different inhibitors of PKC (staurosporine, H-7 and calphostin C) increased the release of [3H]AA and inhibited beta-TG release and aggregation induced by AlF4- but they had no effect when platelets were stimulated with thrombin (0.5 U/ml). Calphostin C was able to release [3H]AA by itself without inducing aggregation of beta-TG release. Okadaic acid (a serine/threonine phosphoprotein phosphatase inhibitor) greatly inhibited the release of [3H]AA, beta-TG and aggregation in AlF4--stimulated platelets. These results indicate the presence of a G-protein mediated mechanism for the activation of a platelet phospholipase A2 which is negatively affected by a protein kinase, sensible to putative inhibitors of protein kinase C, and it is activated by a protein phosphatase, sensible to okadaic acid.
1. A phospholipase A2 (PLA2) represents the key enzyme in the remodelling pathway of platelet-activating factor (PAF) synthesis in human polymorphonuclear (PMN) leucocytes. 2. PLA2 activation is also the rate-limiting step for the release of the arachidonic acid utilized for the synthesis of leukotrienes in stimulated leucocytes; however, it is unknown whether the PLA2s involved in the two biosynthetic pathways are identical. 3. Cloricromene (8-monochloro-3-beta-diethylaminoethyl-4-methyl-7-ethoxy- carbonylmethoxy coumarin) is an antithrombotic coumarin derivative which inhibits platelet and leucocyte function and suppresses arachidonic acid liberation by interfering with PLA2 activation. 4. The aim of the present study was to assess whether chloricromene inhibits PAF synthesis by stimulated human polymorphonuclear leucocytes (PMNs). 5. Cloricromene (50-500 microM) inhibited in a concentration-dependent manner the release of PAF, as measured by h.p.l.c. bioassay, from A23187-stimulated PMNs. Significant inhibition (45%) of PAF-release was obtained with 50 microM cloricromene and the IC50 was 85 microM. Mepacrine (500 microM), a non-specific PLA2 inhibitor, strikingly reduced PAF release. 6. The incorporation of [3H]-acetate into [3H]-PAF induced by serum-treated zymosan in human PMNs was also inhibited concentration-dependently by cloricromene, with an IC50 of 105 microM. Mepacrine also suppressed [3H]-acetate incorporation into [3H]-PAF. 7. Cloricromene did not affect the activities of the enzymes involved in PAF-synthesis acetyltransferase or phosphocholine transferase. 8. Our data demonstrate that cloricromene, an inhibitor of PLA2-activation in human leucocytes, reduces the synthesis of PAF by stimulated PMNs. This finding has a twofold implication: the PLA2s (or the mechanisms that regulate their activation) involved in PAF synthesis and arachidonate release in human leucocytes are either identical or else indistinguishable by their sensitivity to cloricromene; the inhibition of PAF release by activated leucocytes may contribute to the antithrombotic and anti-ischaemic activities exerted by cloricromene.
The evaluation of the salivary PAF has possible by using the radio immuno assay method (RIA). We wanted to study the presence of such substance in the saliva under physiological conditions and particularly in relation to possible existence of a circadian rhythm or periodical oscillations. The work has been developed in two phases. In the first one we evaluated the daily salivary PAF amount while in the second phase of the study we verified the existence of a possible circadian rhythm. The results encouraged us to extend the study to the typical, different physiological aspects of such phospholipid having as objective the control of the salivary PAF amount in pathological conditions.
Granules containing acid hydrolases have been detected in human platelets but have not been thoroughly characterized. We have studied the activity and characteristics of glycohydrolases present in normal human platelets, evaluated their release upon stimulation with thrombin, and assessed the contribution of platelet - released lysosomal contents to the glycohydrolase activity present in normal serum. Platelets contained a remarkable glycohydrolase activity with a prevalence of beta - N-acetylhexosaminidase. All glycohydrolases were released to some extent upon stimulation with thrombin and contributed to the glycohydrolase activity found in human serum. alpha-Mannosidase and alpha-galactosidase were partially inactivated after release by a mechanism as yet undefined. In addition, thrombin stimulation affects the intraplatelet isoenzyme pattern of beta-N-acetylhexosaminidase by producing the appearance of a new form.
Acid and pepsin are thought to play an important role in the process of gastrointestinal side effects induced by nonsteroidal anti-inflammatory drugs (NSAIDs). Although NSAIDs increase basal gastric acid secretion, the effect they exert on pepsinogen secretion is unknown. Because pepsin plays a key role in many acid-related diseases, we investigated whether NSAIDs directly stimulate pepsinogen secretion from isolated chief cells. Exposure of guinea pig gastric chief cells to indomethacin (10 microM) did not reduce cell viability as evaluated by lactate dehydrogenase and 51Cr release and trypan blue incorporation. Indomethacin (10 microM) caused two- to threefold increases in pepsinogen secretion and intracellular calcium concentrations ([Ca2+]i). Both effects were concentration dependent. Removal of extracellular Ca2+ or pretreatment of the cells with 0.5 mM lanthanum blocked both pepsinogen secretion and the [Ca2+]i increase in chief cells stimulated with 10 microM indomethacin. Exposure of isolated chief cells to indomethacin caused a 90% inhibition of prostaglandin (PG) E2 generation, but a 12-fold increase in leukotriene (LT) B4 release. Incubating chief cells with exogenously added LTB4, LTC4, LTD4, and LTE4 provoked a concentration-dependent stimulation of pepsinogen release (mean effective concentration of 0.05-0.1 nM). Maximally effective concentrations of all LTs (10 microM) increased [Ca2+]i two- to threefold. Pretreating the cells with a 5-lipoxygenase inhibitor abolished LTB4 generation induced by Ca2+ ionophore and indomethacin and reduced indomethacin-induced pepsinogen secretion 20%. In conclusion, indomethacin induced a concentration-dependent stimulation of pepsinogen secretion and [Ca2+]i in isolated chief cells. Indomethacin inhibits PGE2 generation, but increases LTB4 release. This "lipoxygenase shunt" may contribute to the effect indomethacin exerts on isolated chief cells.
We studied the prevalence, clinical spectrum and epidemiologic features of thrombocytopenia among 442 (333 male, 109 female) HIV infected patients. Thrombocytopenia was defined as a platelet count < 100,000/mmc and severe if platelet count was < or = 30,000/mmc. Intravenous drug abusers were 83% (369/442). At the first clinical evaluation according to Walter-Reed (WR) classification, 90% (396/442) of patients were in stage 1-5 and 10% (45/442) in stage 6. Severe thrombocytopenia (platelet count < or = 30,000/mmc) was present in 24% (11/45) of the entire thrombocytopenic population. Forty percent (18/45) of the thrombocytopenic patients were positive to: HBV (6), HCV (7), HBV+HCV (5). Mild bleeding was present in 16% (7/45) of the patients but one case, with severe thrombocytopenia, died of intracranial hemorrhage. Major hemorrhagic sequelae with even fatal events are possible, especially when a low platelet count is associated with other hemostatic abnormalities (e.g. haemophilia, liver disease, disseminated intravascular coagulation). Zidovudine therapy (range 500-1250 mg/day) is effective in normalizing the platelet count (platelets > 100,000/mmc) only in 29% (9/31) of the patients.
Exposure of human platelets to U46619, a thromboxane (Tx) A2 mimetic, desensitizes the TxA2/prostaglandin (PG) H2 receptor and sensitizes adenylylcyclase to stimuli, such as PGI2 or PGD2. This phenomenon may occur in vivo in conditions associated with platelet activation. Tx synthase inhibitors produce a rediversion of arachidonic acid metabolism toward the adenylylcyclase stimulators PGD2 and PGI2. We assessed whether the desensitization of the platelet TxA2 receptor affects the antiplatelet activity of drugs acting on the arachidonic acid metabolic cascade. A Tx synthase inhibitor (OKY046), a PGH2/TxA2 receptor antagonist (BM13.505), their combination, two dual Tx synthase inhibitors/receptor antagonists (picotamide and ridogrel) or the cyclooxygenase inhibitor aspirin were studied. OKY046 alone or combined with BM13.505, picotamide and ridogrel, as well as PGD2, but not BM13.505 or aspirin, caused a stronger inhibition of platelet aggregation with desensitized platelets; this effect was potentiated by the phosphodiesterase inhibitor HL725 and was almost abolished by the adenylylcyclase inhibitor SQ22,536. A larger increase in cAMP synthesis was observed in desensitized as compared with control platelets with a Tx synthase inhibitor or with dual Tx synthase inhibition/receptor antagonism. No differences were observed in the degree of TxA2 suppression. Our observations showed that Tx synthase inhibitors exerted a stronger antiaggregatory effect in TxA2 receptor-desensitized platelets due to a stimulation of adenylylcyclase. This can be of relevance in the treatment of thrombotic disorders in which an in vivo desensitization of platelet TxA2 receptors takes place.
OBJECTIVE: To determine the effect of interferon-alpha for severe, zidovudine-resistant, HIV-1-related thrombocytopenia. DESIGN: Prospective, randomized, double-blind, placebo-controlled, multicenter, crossover trial. SETTING: Outpatient clinics in Central Northern Italy. PATIENTS: 15 sequential patients positive for HIV-1 with platelet counts less than 25 x 10(9)/L who were refractory to 1 month of full-dose (1000 mg/d) zidovudine. INTERVENTION: Interferon-alpha (3 million units) or placebo (1 mL saline) three times a week subcutaneously for 4 weeks, followed by a 4-week washout period. Patients were then switched to the alternative treatment for the next 4 weeks, followed by another 4 weeks of washout, and they were randomly assigned to either sequence of treatment. Patients received zidovudine (200 mg three times daily) throughout the study. MEASUREMENTS: The primary end point was the platelet count (measured weekly). Secondary end points were qualitative assessment of the platelet response; bleeding time; p24 antigen in serum; CD4/CD8 counts; beta 2-microglobulin in serum; and platelet-associated IgG. RESULTS: Interferon-alpha significantly increased platelet counts in the 12 patients who completed the study (baseline level, 15.6 +/- 7.1 x 10(9)/L; after 4 weeks of interferon-alpha therapy, 82.2 +/- 52.2 x 10(9)/L). The estimated increase in the platelet count after interferon-alpha compared with placebo was 60.0 x 10(9)/L (95% CI, 23.2 to 96.8 x 10(9)/L). The increase was already statistically significant after 3 weeks (66.6 +/- 49.7 x 10(9)/L) and remained significantly increased 1 week after discontinuing interferon-alpha therapy (58.2 +/- 45.0 x 10(9)/L). Placebo did not modify the platelet count. The bleeding time was significantly shortened by interferon-alpha. Four of 12 patients who had more serious alterations of some measures reflecting disease severity did not respond to interferon-alpha. No relevant side effects were observed. CONCLUSIONS: Interferon-alpha is a safe and effective treatment for zidovudine-resistant, HIV-related thrombocytopenia.